Tarkista embargo, kun artikkeli julkaistu.Flexible electronics that can form tight interfaces with neural tissues hold great promise for improving the diagnosis and treatment of neurological disorders and advancing brain/machine interfaces. Here, the facile fabrication of a novel flexible micropillar electrode array (µPEA) is described based on a biotemplate method. The flexible and compliant µPEA can readily integrate with the soft surface of a rat cerebral cortex. Moreover, the recording sites of the µPEA consist of protruding micropillars with nanoscale surface roughness that ensure tight interfacing and efficient electrical coupling with the nervous system. As a result, the flexible µPEA allows for in vivo multichannel recordings of epi...
Conventional polymer multielectrode arrays (MEAs) have limitations resulting from a high Young’s mod...
OBJECTIVE: Long-term electrophysiological recordings of neural activity in freely behaving animals a...
Multi-electrode arrays with 3D micropillars allow the recording of electrophysiological signals in v...
Tarkista embargo, kun artikkeli julkaistu.Flexible electronics that can form tight interfaces with n...
Current implantable brain devices for clinical and research applications require that each electrode...
Objective. In this paper, we report on the development of an easy-to-fabricate three-dimensional Mic...
Objective. In this paper, we report on the development of an easy-to-fabricate three-dimensional Mic...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
OBJECTIVE: This study describes the design and microfabrication of a foldable thin-film neural impla...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
This paper reports on a novel type of silicon-based microprobes with linear, two and three dimension...
Arrays of electrodes for recording and stimulating the brain are used throughout clinical medicine a...
We have fabricated a compliant neural interface to record afferent nerve activity. Stretchable gold ...
[[abstract]]This paper presents a flexible microelectrode array integrated with a single-chip system...
Multi-electrode arrays with 3D micropillars allow the recording of electrophysiological signals in v...
Conventional polymer multielectrode arrays (MEAs) have limitations resulting from a high Young’s mod...
OBJECTIVE: Long-term electrophysiological recordings of neural activity in freely behaving animals a...
Multi-electrode arrays with 3D micropillars allow the recording of electrophysiological signals in v...
Tarkista embargo, kun artikkeli julkaistu.Flexible electronics that can form tight interfaces with n...
Current implantable brain devices for clinical and research applications require that each electrode...
Objective. In this paper, we report on the development of an easy-to-fabricate three-dimensional Mic...
Objective. In this paper, we report on the development of an easy-to-fabricate three-dimensional Mic...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
OBJECTIVE: This study describes the design and microfabrication of a foldable thin-film neural impla...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
This paper reports on a novel type of silicon-based microprobes with linear, two and three dimension...
Arrays of electrodes for recording and stimulating the brain are used throughout clinical medicine a...
We have fabricated a compliant neural interface to record afferent nerve activity. Stretchable gold ...
[[abstract]]This paper presents a flexible microelectrode array integrated with a single-chip system...
Multi-electrode arrays with 3D micropillars allow the recording of electrophysiological signals in v...
Conventional polymer multielectrode arrays (MEAs) have limitations resulting from a high Young’s mod...
OBJECTIVE: Long-term electrophysiological recordings of neural activity in freely behaving animals a...
Multi-electrode arrays with 3D micropillars allow the recording of electrophysiological signals in v...